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The Capacity of Superfinished Vehicle Components to Increase Fuel Economy, Part I

机译:超大型车辆零部件提高燃油经济性的能力,第一部分

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The lubricant industry is emphasizing the use of low-viscosity lubricants to increase fuel economy. Fuel mileage increases as high as 8% are claimed when conventional engine and driveline lubricants are replaced with new-generation products. Low viscosity lubricants, however, must contain more robust anti-wear and extreme pressure additives to counteract their reduced λ ratio. Consequently, switching to lower viscosity lubricants in order to gain fuel economy entails risk. Should the additive package fail to perform, engine, transmission and drivetrain components will be seriously damaged. It seems appropriate, then, to attempt to increase the A, ratio for low-viscosity lubricants. This, of course, can be done by reducing surface roughness. Superfinishing the surface using chemically accelerated vibratory finishing is a practical and well proven approach for accomplishing this. This paper will present data from both laboratory and field testing demonstrating that superfinished components exhibit lower friction, operating temperature, wear and/ or higher horsepower, all of which translate directly into increased fuel economy.
机译:润滑油行业正在强调使用低粘度润滑油以提高燃油经济性。当用新一代产品代替传统的发动机和动力传动系统润滑油时,燃油里程可提高多达8%。但是,低粘度润滑剂必须包含更坚固的抗磨剂和极压添加剂,以抵消其降低的λ比。因此,为了获得燃料经济性而转向使用较低粘度的润滑剂会带来风险。如果添加剂包无法正常工作,则发动机,变速箱和传动系统组件将受到严重损坏。因此,似乎有必要尝试增加低粘度润滑剂的A.比。当然,这可以通过减小表面粗糙度来完成。使用化学加速振动抛光对表面进行超精加工是实现此目的的一种实用且久经考验的方法。本文将提供来自实验室和现场测试的数据,证明超精加工部件具有更低的摩擦,更低的工作温度,更高的磨损和/或更高的马力,所有这些直接转化为更高的燃油经济性。

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